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Martensitic Steels of nanocomposites and Process for its manufacture

机译:纳米复合材料马氏体钢及其制造方法

摘要

It describes high-performance carbon sidewalks with dislocated line structures in which the Matan ribbon is altered by thin Austin films, However, every dislocated grid structure is limited to a kind of microstructure variant, and all thin Austin films are moving in the same direction, which is achieved by carefully controlling the particle size of less than 10 microns. The way to further increase the steel output is to process the steel in such a way as to avoid the formation of white stone.perlite and precipitation between phases. The process for the manufacture of steel consists of: a) forming the composition of the steel having a martensite formation start temperature of at least 300 ° C. b) heating said composition to a temperature sufficient to assume a homogeneous austenitic phase withThe dissolved alloy element (c) processes a uniform phase above its heating temperature to obtain a particle size of less than or equal to 10 microns. (d) This stage is cooled to the extent of transition to martensita in order to transform it into a fusion particle microstructureEach grain is 10 microns or less in diameter and has alternating potato films, all of which are oriented in the same direction.
机译:它描述了具有错位线状结构的高性能碳人行道,其中马斯坦色带被奥斯丁薄膜所改变,但是,每一个错位的网格结构都限于一种微观结构变体,所有奥斯丁薄膜都朝着同一方向移动,这是通过小心控制小于10微米的粒径来实现的。进一步增加钢产量的方法是对钢进行处理,以免形成白石,珍珠岩和相间沉淀。用于制造钢的方法包括:a)形成马氏体形成起始温度至少为300°C的钢的成分。b)将所述成分加热到足以采用溶解的合金元素呈现均匀奥氏体相的温度(c)在高于其加热温度的条件下处理均匀相以获得小于或等于10微米的粒度。 (d)将该阶段冷却至过渡到马氏体的程度,以便将其转变成融合颗粒的微观结构。每个晶粒的直径为10微米或更小,并具有交替的马铃薯膜,所有的马铃薯膜都朝向相同的方向。

著录项

  • 公开/公告号AR037830A1

    专利类型

  • 公开/公告日2004-12-09

    原文格式PDF

  • 申请/专利权人 MMFX TECHNOLOGIES CORPORATION;

    申请/专利号AR2002P104849

  • 发明设计人

    申请日2002-12-13

  • 分类号C22C38/00;C21D6/00;

  • 国家 AR

  • 入库时间 2022-08-21 22:18:55

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